2016
DOI: 10.1051/matecconf/20163901005
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The effect of fibre layering pattern in resisting bending loads of natural fibre-based hybrid composite materials

Abstract: Abstract. The effect of fibre layering pattern and hybridization on the flexural properties of composite hybrid laminates between natural fibres of basalt, jute and flax with synthetic fibre of E-glass reinforced epoxy have been investigated experimentally. Results showed that the effect fibre layering pattern was highly significant on the flexural strength and modulus, which were strongly dependent on the hybrid configuration between sandwich-like (SL) and intercalation (IC) sequence of fibre layers. In addit… Show more

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“…It has been observed that the increase in material thickness has a decreasing effect on tensile strength and an increase in compression strength values. Jusoh et al [18] investigated how the hybridization process and the pattern of these fibers in composites formed with glass fiber, basalt, jute, and flax fibers affect the bending strength. In terms of hybridization, it was understood that the glass/jute sandwich-like structure showed optimum integration with E-glass against other fibers produced in the research, and the delamination mechanism did not occur due to the presence of the glass layer in the fracture analysis.…”
Section: Introductionmentioning
confidence: 99%
“…It has been observed that the increase in material thickness has a decreasing effect on tensile strength and an increase in compression strength values. Jusoh et al [18] investigated how the hybridization process and the pattern of these fibers in composites formed with glass fiber, basalt, jute, and flax fibers affect the bending strength. In terms of hybridization, it was understood that the glass/jute sandwich-like structure showed optimum integration with E-glass against other fibers produced in the research, and the delamination mechanism did not occur due to the presence of the glass layer in the fracture analysis.…”
Section: Introductionmentioning
confidence: 99%